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@ARTICLE{linsheng2001,
  author = {林胜 and 杨成军 and 全子一},
  title = {MPEG 声音编码标准简介},
  journal = {数字声频},
  year = {2001},
  volume = {2},
  owner = {Administrator},
  timestamp = {2009.06.15}
}

@INPROCEEDINGS{Erol1998,
  author = {Erol, B. and Gallant, M. and Cote, G. and Kossentini, F.},
  title = {The H.263+ video coding standard: complexity and performance},
  booktitle = {Proc. Data Compression Conference DCC '98},
  year = {1998},
  pages = {259--268},
  abstract = {The emerging ITU-T H.263+ low bit-rate video coding standard is version
	2 of the draft international standard ITU-T H.263. In this paper,
	we discuss this emerging video coding standard and present compression
	performance results based on our public domain implementation of
	H.263+},
  doi = {10.1109/DCC.1998.672154},
  issn = {1068-0314},
  keywords = {code standards, computational complexity, data compression, telecommunication
	standards, video coding, H.263+ video coding standard, ITU-T H.263,
	ITU-T H.263+ standard, complexity, compression performance results,
	draft international standard, low bit-rate video coding},
  owner = {xxthink},
  timestamp = {2009.06.12}
}

@ARTICLE{Girod1993,
  author = {Girod, B.},
  title = {Motion-compensating prediction with fractional-pel accuracy},
  journal = IEEE_J_COM,
  year = {1993},
  volume = {41},
  pages = {604--612},
  number = {4},
  month = {April },
  doi = {10.1109/26.223785},
  owner = {xxthink},
  timestamp = {2009.06.12}
}

@INPROCEEDINGS{Girod1995,
  author = {Girod, B. and Steinbach, E. and Faerber, N.},
  title = {Comparison of the H.263 and H.261 video compression standards},
  booktitle = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference
	Series},
  year = {1995},
  editor = {Rao, K.~R.},
  pages = {233-251},
  month = dec,
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  adsurl = {http://adsabs.harvard.edu/abs/1995SPIE.CR60..233G}
}

@BOOK{haskell1996dvi,
  title = {{Digital video: an introduction to MPEG-2}},
  publisher = {Kluwer Academic Publishers},
  year = {1996},
  author = {Haskell, B.G. and Puri, A. and Netravali, A.N.}
}

@ARTICLE{Orchard1994,
  author = {Orchard, M.T. and Sullivan, G.J.},
  title = {Overlapped block motion compensation: an estimation-theoretic approach},
  journal = IEEE_J_IP,
  year = {1994},
  volume = {3},
  pages = {693--699},
  number = {5},
  abstract = {We present an estimation-theoretic analysis of motion compensation
	that, when used with fields of block-based motion vectors, leads
	to the development of overlapped block algorithms with improved compensation
	accuracy. Overlapped block motion compensation (OBMC) is formulated
	as a probabilistic linear estimator of pixel intensities given the
	limited block motion information available to the decoder. Although
	overlapped techniques have been observed to reduce blocking artifacts
	in video coding, this analysis establishes for the first time how
	(and why) OBMC can offer substantial reductions in prediction error
	as well, even with no change in the encoder's search and no extra
	side information. Performance can be further enhanced with the use
	of state variable conditioning in the compensation process. We describe
	the design of optimized windows for OBMC. We also demonstrate how,
	with additional encoder complexity, a motion estimation algorithm
	optimized for OBMC offers further significant gains in compensation
	accuracy. Overall mean-square prediction improvements in the range
	of 16 to 40% (0.8 to 2.2 dB) are demonstrated},
  doi = {10.1109/83.334974},
  issn = {1057-7149},
  keywords = {estimation theory, image coding, image sequences, motion estimation,
	video signals, OBMC, additional encoder complexity, block-based motion
	vectors, blocking artifacts reduction, compensation accuracy, estimation-theoretic
	analysis, mean-square prediction improvement, motion estimation algorithm,
	optimized windows, overlapped block algorithms, overlapped block
	motion compensation, pixel intensities, prediction error reduction,
	probabilistic linear estimator, state variable conditioning, video
	coding, video sequence coding},
  owner = {xxthink},
  timestamp = {2009.06.12}
}

@ARTICLE{Stoll1992,
  author = {Stoll, G. and Brandenburg, K.},
  title = {{The ISO/MPEG-audio codec: a generic standard for coding of high
	quality digital audio}},
  journal = {ITG FACHBERICHT},
  year = {1992},
  pages = {95--95},
  owner = {Administrator},
  publisher = {VDE VERLAG GMBH},
  timestamp = {2009.06.15}
}

@ARTICLE{Wiegand2003,
  author = {Wiegand, T. and Sullivan, G. J. and Bjontegaard, G. and Luthra, A.},
  title = {Overview of the H.264/AVC video coding standard},
  journal = IEEE_J_CASVT,
  year = {2003},
  volume = {13},
  pages = {560--576},
  number = {7},
  month = {July },
  doi = {10.1109/TCSVT.2003.815165},
  owner = {Administrator},
  timestamp = {2009.06.16}
}

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